The Future Prospect and Climate Change of Australian Savanna

Australian savannas have been subject to a variety of climate and land management histories.
There has been little research conducted in the Australian tropical savannas where climate conditions are highly variable.

Jan
Feb
Mar
Apr
May
June
July
Aug
Sept
Oct
Nov
Dec
Annual
Mean
198
211
157
28
7.1
3.6
1.7
0.1
3.1
23.6
51.3
135.9
828.2
This table indicates the mean precipitation of Northern Australia in mm. Based on this table, Australia Savanna receives the most amount of rain from December to March, when areas in the south of Australia receive the least. A scenario of 'plausible future climate' for the Australian region (Anon., 1988), made solely for the purpose of evaluating the impact of climatic change, suggested increases in summer rainfall (+30%) and decreases in winter rainfall (-20%) in Australian Savanna. The large impact of such plausible scenarios on savannas (McKeon 1988; Graetz, Walker & Walker, 1988) indicates the importance of developing a capability to expect the savanna response to climate change. In northern Australian savannas the likely outcome of such a climate change may affect the areas used for cropping (McKeon et al., 1988; Russell, 1988) and forestry (for preservation or timber). The global effect of climate change on cropping areas (existing and potential) elsewhere in the world could affect the economic viability of the Australian export grain and pastoral industries and hence the future of savanna lands. Comparative studies of savanna processes across wide geographical boundaries (for example, Mott et al., 1985) would provide the basis for prediction of savanna response to climate change.
             Geographic information systems will prove valuable in indicating the change in savanna land use with respect to climate change (Graetz et al., 1988). Similarly Busby (1988) has shown how geographical information systems using vegetation/environment relationships can anticipate the changes in forest and wildlife habitats. However, our capability to plan for these changes to savannas is likely to be limited by the understanding of environment/vegetation/ wildlife relationships (Braithwaite, 1985; Bowman & Minchin, 1987). The real value of such studies will be in the rapid evaluation of the impact of climate change as forecast by current global circulation models (Tucker, 1988). Current increases in greenhouse gases (Pearman, 1988) suggest that large changes in climate are likely to occur during (and beyond) the next 50 years (Tucker, 1988). 
             In the Northern Australian savannas there’s still a lot of tree-clearing and vegetation management which are important issues. People clear trees in Savannas to make them better for pasture production. People often stop the fires which would naturally clear the land. Australian Savanna is relatively ancient but due to these human interferences, Australian Savannas would not be Savannas what they used to be.
Average Yearly Precipitation in Australian Savanna
(source: bushblitz.teachlive.org.au)







What We Can Do to Maintain the Ecosystem



There are numerous ways in which humans can maintain the ecological condition of the Australian Savannas and even other savannas around the world. One of the leading causes of degradation in the Australian biomes is the use of the biome by humans especially for agriculture. When humans occupy savannas and engage in agriculture, the result is a reduced amount of native vegetation and degradation of soil because of poor nutrients and water. The first ways in which human beings can maintain the savanna ecosystems while occupying them as well would be to use sustainable agricultural practices such as crop rotation, natural pest predators, and biointensive integrated pest management. These practices would drastically improve soil quality in the savannas which in turn would definitely help retain the savanna ecosystems and some of its components such as the soil and native vegetation. Another way humans can help improve the quality of the Australian savanna ecosystem is by stopping the introduction of foreign species into the biome. One example of this is when the introduction of rabbits drove many native Australian savanna plants to extinction. Preventing further introduction of new species that could have detrimental effects on the food web of the Savanna ecosystem of Australia can definitely help maintain the good condition that it is in already. In addition, humans can take effort to remove some of the predators, such as the rabbits, to help save the endangered species of plants that are native to the ecosystem in order to help retain its positive ecology. Another way to maintain the ecosystem is by promoting protected areas. The Australian government and the indigenous people agreed to form Indigenous Protected Areas. Many of these protected areas are on the savannas. Their goal is to promote biodiversity and to conserve the ecosystem.
List and map of Indigenous Protected Areas [source:WWF]

Works Cited



Anon. (1988) Climate change in Australia to the year 2030 AD. Greenhouse: planning for climate change (ed. by G. I. Pearman), pp. 737-740. CSIRO, Melbourne.

"Australian Savanna Animals". Australian Savanna Animals. N.p., 2001. Web. 05 Dec. 2014.

Burrows, W. H., et al. "Management of savannas for livestock production in north-east Australia: contrasts across the tree-grass continuum." Journal of Biogeography (1990): 503-512.

Graetz, R.D., Walker, B.H. & Walker, P.A. (1988) The consequences of climatichange for seventy per cent of Australia. Greenhouse: planning for climate change  (ed. by G. I. Pearman), pp. 399-420. CSIRO, Melbourne

Holt, J. A., and R. J. Coventry. "Nutrient cycling in Australian savannas." Journal of Biogeography (1990): 427-432.
 
Hurst, Dale F., David WT Griffith, and Garry D. Cook. "Trace gas emissions from biomass burning in tropical Australian savannas." Journal of Geophysical Research: Atmospheres (1984–2012) 99.D8 (1994): 16441-16456.

Kutt, Alex. S. and C.Z. Woinarski. “The Effects of Grazing and Fire on Vegetation and the Vertebrate Assemblage in a Tropical Savanna Woodland in North-Eastern Australia” Journal of Tropical Ecology, Vol. 23, No. 1 (Jan., 2007) 95-106 
 
Ludwig, J.A., R.W. Eager, R.J. Williams, and L.M. Lowe. “Declines in vegetation patches, plant diversity, and grasshopper diversity near cattle watering-points in the Victoria River District, northern Australia.” The Rangeland Journal 21 (1999) 135-149.

McKoon, G.M., The effect of climate change on crop and pastoral production in Queensland. Greenhouse: planning for climate change (ed. By G. I. Pearman), pp. 546-563. CSIRO, Melbourne.
 
McKeon, G. M., et al. "Northern Australian savannas: management for pastoral production." Journal of Biogeography (1990): 355-372.

Mott, J.J. (1986) Pastoralism and Australian Savannas: a question of stability. Proc. 4th Aust. Rangel Soc. Confreence, Armidale, pp. 61-64
 
"Northern Australian Grasslands." Northern Australian Grasslands | The Nature Conservancy. The Nature Conservancy, n.d. Web. 30 Nov. 2014.

Pearman, G.I. (1988) Greenhouse gases: evidence for atmospheric changes and anthropogenic causes. Greenhouse: planning for climate change (ed. by G. I. Pearman), pp. 3-21. CSIRO, Melbourne.

"Tropical Savannas: A Unique Region." Savanna Explorer. The Tropical Savannas CRC, n.d. Web. 30 Nov. 2014.

Tucker, G.B. (1988) Climate modeling: How does it work? Greenhous: planning for climate change (ed. By Gi.i. Pearman), pp. 22-34. CSIRO, Melbrourne.